]>
The Tcpdump Group git mirrors - tcpdump/blob - print-nfs.c
2 * Copyright (c) 1988, 1989, 1990, 1991, 1992, 1993, 1994, 1995, 1996, 1997
3 * The Regents of the University of California. All rights reserved.
5 * Redistribution and use in source and binary forms, with or without
6 * modification, are permitted provided that: (1) source code distributions
7 * retain the above copyright notice and this paragraph in its entirety, (2)
8 * distributions including binary code include the above copyright notice and
9 * this paragraph in its entirety in the documentation or other materials
10 * provided with the distribution, and (3) all advertising materials mentioning
11 * features or use of this software display the following acknowledgement:
12 * ``This product includes software developed by the University of California,
13 * Lawrence Berkeley Laboratory and its contributors.'' Neither the name of
14 * the University nor the names of its contributors may be used to endorse
15 * or promote products derived from this software without specific prior
17 * THIS SOFTWARE IS PROVIDED ``AS IS'' AND WITHOUT ANY EXPRESS OR IMPLIED
18 * WARRANTIES, INCLUDING, WITHOUT LIMITATION, THE IMPLIED WARRANTIES OF
19 * MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE.
22 /* \summary: Network File System (NFS) printer */
28 #include <netdissect-stdinc.h>
33 #include "netdissect.h"
34 #include "addrtoname.h"
45 static const char tstr
[] = " [|nfs]";
47 static void nfs_printfh(netdissect_options
*, const uint32_t *, const u_int
);
48 static int xid_map_enter(netdissect_options
*, const struct sunrpc_msg
*, const u_char
*);
49 static int xid_map_find(const struct sunrpc_msg
*, const u_char
*,
50 uint32_t *, uint32_t *);
51 static void interp_reply(netdissect_options
*, const struct sunrpc_msg
*, uint32_t, uint32_t, int);
52 static const uint32_t *parse_post_op_attr(netdissect_options
*, const uint32_t *, int);
55 * Mapping of old NFS Version 2 RPC numbers to generic numbers.
57 static uint32_t nfsv3_procid
[NFS_NPROCS
] = {
86 static const struct tok nfsproc_str
[] = {
87 { NFSPROC_NOOP
, "nop" },
88 { NFSPROC_NULL
, "null" },
89 { NFSPROC_GETATTR
, "getattr" },
90 { NFSPROC_SETATTR
, "setattr" },
91 { NFSPROC_LOOKUP
, "lookup" },
92 { NFSPROC_ACCESS
, "access" },
93 { NFSPROC_READLINK
, "readlink" },
94 { NFSPROC_READ
, "read" },
95 { NFSPROC_WRITE
, "write" },
96 { NFSPROC_CREATE
, "create" },
97 { NFSPROC_MKDIR
, "mkdir" },
98 { NFSPROC_SYMLINK
, "symlink" },
99 { NFSPROC_MKNOD
, "mknod" },
100 { NFSPROC_REMOVE
, "remove" },
101 { NFSPROC_RMDIR
, "rmdir" },
102 { NFSPROC_RENAME
, "rename" },
103 { NFSPROC_LINK
, "link" },
104 { NFSPROC_READDIR
, "readdir" },
105 { NFSPROC_READDIRPLUS
, "readdirplus" },
106 { NFSPROC_FSSTAT
, "fsstat" },
107 { NFSPROC_FSINFO
, "fsinfo" },
108 { NFSPROC_PATHCONF
, "pathconf" },
109 { NFSPROC_COMMIT
, "commit" },
114 * NFS V2 and V3 status values.
116 * Some of these come from the RFCs for NFS V2 and V3, with the message
117 * strings taken from the FreeBSD C library "errlst.c".
119 * Others are errors that are not in the RFC but that I suspect some
120 * NFS servers could return; the values are FreeBSD errno values, as
121 * the first NFS server was the SunOS 2.0 one, and until 5.0 SunOS
122 * was primarily BSD-derived.
124 static const struct tok status2str
[] = {
125 { 1, "Operation not permitted" }, /* EPERM */
126 { 2, "No such file or directory" }, /* ENOENT */
127 { 5, "Input/output error" }, /* EIO */
128 { 6, "Device not configured" }, /* ENXIO */
129 { 11, "Resource deadlock avoided" }, /* EDEADLK */
130 { 12, "Cannot allocate memory" }, /* ENOMEM */
131 { 13, "Permission denied" }, /* EACCES */
132 { 17, "File exists" }, /* EEXIST */
133 { 18, "Cross-device link" }, /* EXDEV */
134 { 19, "Operation not supported by device" }, /* ENODEV */
135 { 20, "Not a directory" }, /* ENOTDIR */
136 { 21, "Is a directory" }, /* EISDIR */
137 { 22, "Invalid argument" }, /* EINVAL */
138 { 26, "Text file busy" }, /* ETXTBSY */
139 { 27, "File too large" }, /* EFBIG */
140 { 28, "No space left on device" }, /* ENOSPC */
141 { 30, "Read-only file system" }, /* EROFS */
142 { 31, "Too many links" }, /* EMLINK */
143 { 45, "Operation not supported" }, /* EOPNOTSUPP */
144 { 62, "Too many levels of symbolic links" }, /* ELOOP */
145 { 63, "File name too long" }, /* ENAMETOOLONG */
146 { 66, "Directory not empty" }, /* ENOTEMPTY */
147 { 69, "Disc quota exceeded" }, /* EDQUOT */
148 { 70, "Stale NFS file handle" }, /* ESTALE */
149 { 71, "Too many levels of remote in path" }, /* EREMOTE */
150 { 99, "Write cache flushed to disk" }, /* NFSERR_WFLUSH (not used) */
151 { 10001, "Illegal NFS file handle" }, /* NFS3ERR_BADHANDLE */
152 { 10002, "Update synchronization mismatch" }, /* NFS3ERR_NOT_SYNC */
153 { 10003, "READDIR/READDIRPLUS cookie is stale" }, /* NFS3ERR_BAD_COOKIE */
154 { 10004, "Operation not supported" }, /* NFS3ERR_NOTSUPP */
155 { 10005, "Buffer or request is too small" }, /* NFS3ERR_TOOSMALL */
156 { 10006, "Unspecified error on server" }, /* NFS3ERR_SERVERFAULT */
157 { 10007, "Object of that type not supported" }, /* NFS3ERR_BADTYPE */
158 { 10008, "Request couldn't be completed in time" }, /* NFS3ERR_JUKEBOX */
162 static const struct tok nfsv3_writemodes
[] = {
169 static const struct tok type2str
[] = {
180 static const struct tok sunrpc_auth_str
[] = {
181 { SUNRPC_AUTH_OK
, "OK" },
182 { SUNRPC_AUTH_BADCRED
, "Bogus Credentials (seal broken)" },
183 { SUNRPC_AUTH_REJECTEDCRED
, "Rejected Credentials (client should begin new session)" },
184 { SUNRPC_AUTH_BADVERF
, "Bogus Verifier (seal broken)" },
185 { SUNRPC_AUTH_REJECTEDVERF
, "Verifier expired or was replayed" },
186 { SUNRPC_AUTH_TOOWEAK
, "Credentials are too weak" },
187 { SUNRPC_AUTH_INVALIDRESP
, "Bogus response verifier" },
188 { SUNRPC_AUTH_FAILED
, "Unknown failure" },
192 static const struct tok sunrpc_str
[] = {
193 { SUNRPC_PROG_UNAVAIL
, "PROG_UNAVAIL" },
194 { SUNRPC_PROG_MISMATCH
, "PROG_MISMATCH" },
195 { SUNRPC_PROC_UNAVAIL
, "PROC_UNAVAIL" },
196 { SUNRPC_GARBAGE_ARGS
, "GARBAGE_ARGS" },
197 { SUNRPC_SYSTEM_ERR
, "SYSTEM_ERR" },
202 print_nfsaddr(netdissect_options
*ndo
,
203 const u_char
*bp
, const char *s
, const char *d
)
206 const struct ip6_hdr
*ip6
;
207 char srcaddr
[INET6_ADDRSTRLEN
], dstaddr
[INET6_ADDRSTRLEN
];
209 srcaddr
[0] = dstaddr
[0] = '\0';
210 switch (IP_V((const struct ip
*)bp
)) {
212 ip
= (const struct ip
*)bp
;
213 strlcpy(srcaddr
, ipaddr_string(ndo
, &ip
->ip_src
), sizeof(srcaddr
));
214 strlcpy(dstaddr
, ipaddr_string(ndo
, &ip
->ip_dst
), sizeof(dstaddr
));
217 ip6
= (const struct ip6_hdr
*)bp
;
218 strlcpy(srcaddr
, ip6addr_string(ndo
, &ip6
->ip6_src
),
220 strlcpy(dstaddr
, ip6addr_string(ndo
, &ip6
->ip6_dst
),
224 strlcpy(srcaddr
, "?", sizeof(srcaddr
));
225 strlcpy(dstaddr
, "?", sizeof(dstaddr
));
229 ND_PRINT((ndo
, "%s.%s > %s.%s: ", srcaddr
, s
, dstaddr
, d
));
232 static const uint32_t *
233 parse_sattr3(netdissect_options
*ndo
,
234 const uint32_t *dp
, struct nfsv3_sattr
*sa3
)
237 sa3
->sa_modeset
= EXTRACT_32BITS(dp
);
239 if (sa3
->sa_modeset
) {
241 sa3
->sa_mode
= EXTRACT_32BITS(dp
);
246 sa3
->sa_uidset
= EXTRACT_32BITS(dp
);
248 if (sa3
->sa_uidset
) {
250 sa3
->sa_uid
= EXTRACT_32BITS(dp
);
255 sa3
->sa_gidset
= EXTRACT_32BITS(dp
);
257 if (sa3
->sa_gidset
) {
259 sa3
->sa_gid
= EXTRACT_32BITS(dp
);
264 sa3
->sa_sizeset
= EXTRACT_32BITS(dp
);
266 if (sa3
->sa_sizeset
) {
268 sa3
->sa_size
= EXTRACT_32BITS(dp
);
273 sa3
->sa_atimetype
= EXTRACT_32BITS(dp
);
275 if (sa3
->sa_atimetype
== NFSV3SATTRTIME_TOCLIENT
) {
277 sa3
->sa_atime
.nfsv3_sec
= EXTRACT_32BITS(dp
);
279 sa3
->sa_atime
.nfsv3_nsec
= EXTRACT_32BITS(dp
);
284 sa3
->sa_mtimetype
= EXTRACT_32BITS(dp
);
286 if (sa3
->sa_mtimetype
== NFSV3SATTRTIME_TOCLIENT
) {
288 sa3
->sa_mtime
.nfsv3_sec
= EXTRACT_32BITS(dp
);
290 sa3
->sa_mtime
.nfsv3_nsec
= EXTRACT_32BITS(dp
);
299 static int nfserr
; /* true if we error rather than trunc */
302 print_sattr3(netdissect_options
*ndo
,
303 const struct nfsv3_sattr
*sa3
, int verbose
)
306 ND_PRINT((ndo
, " mode %o", sa3
->sa_mode
));
308 ND_PRINT((ndo
, " uid %u", sa3
->sa_uid
));
310 ND_PRINT((ndo
, " gid %u", sa3
->sa_gid
));
312 if (sa3
->sa_atimetype
== NFSV3SATTRTIME_TOCLIENT
)
313 ND_PRINT((ndo
, " atime %u.%06u", sa3
->sa_atime
.nfsv3_sec
,
314 sa3
->sa_atime
.nfsv3_nsec
));
315 if (sa3
->sa_mtimetype
== NFSV3SATTRTIME_TOCLIENT
)
316 ND_PRINT((ndo
, " mtime %u.%06u", sa3
->sa_mtime
.nfsv3_sec
,
317 sa3
->sa_mtime
.nfsv3_nsec
));
322 nfsreply_print(netdissect_options
*ndo
,
323 register const u_char
*bp
, u_int length
,
324 register const u_char
*bp2
)
326 register const struct sunrpc_msg
*rp
;
327 char srcid
[20], dstid
[20]; /*fits 32bit*/
329 nfserr
= 0; /* assume no error */
330 rp
= (const struct sunrpc_msg
*)bp
;
332 ND_TCHECK(rp
->rm_xid
);
333 if (!ndo
->ndo_nflag
) {
334 strlcpy(srcid
, "nfs", sizeof(srcid
));
335 snprintf(dstid
, sizeof(dstid
), "%u",
336 EXTRACT_32BITS(&rp
->rm_xid
));
338 snprintf(srcid
, sizeof(srcid
), "%u", NFS_PORT
);
339 snprintf(dstid
, sizeof(dstid
), "%u",
340 EXTRACT_32BITS(&rp
->rm_xid
));
342 print_nfsaddr(ndo
, bp2
, srcid
, dstid
);
344 nfsreply_print_noaddr(ndo
, bp
, length
, bp2
);
349 ND_PRINT((ndo
, "%s", tstr
));
353 nfsreply_print_noaddr(netdissect_options
*ndo
,
354 register const u_char
*bp
, u_int length
,
355 register const u_char
*bp2
)
357 register const struct sunrpc_msg
*rp
;
358 uint32_t proc
, vers
, reply_stat
;
359 enum sunrpc_reject_stat rstat
;
362 enum sunrpc_auth_stat rwhy
;
364 nfserr
= 0; /* assume no error */
365 rp
= (const struct sunrpc_msg
*)bp
;
367 ND_TCHECK(rp
->rm_reply
.rp_stat
);
368 reply_stat
= EXTRACT_32BITS(&rp
->rm_reply
.rp_stat
);
369 switch (reply_stat
) {
371 case SUNRPC_MSG_ACCEPTED
:
372 ND_PRINT((ndo
, "reply ok %u", length
));
373 if (xid_map_find(rp
, bp2
, &proc
, &vers
) >= 0)
374 interp_reply(ndo
, rp
, proc
, vers
, length
);
377 case SUNRPC_MSG_DENIED
:
378 ND_PRINT((ndo
, "reply ERR %u: ", length
));
379 ND_TCHECK(rp
->rm_reply
.rp_reject
.rj_stat
);
380 rstat
= EXTRACT_32BITS(&rp
->rm_reply
.rp_reject
.rj_stat
);
383 case SUNRPC_RPC_MISMATCH
:
384 ND_TCHECK(rp
->rm_reply
.rp_reject
.rj_vers
.high
);
385 rlow
= EXTRACT_32BITS(&rp
->rm_reply
.rp_reject
.rj_vers
.low
);
386 rhigh
= EXTRACT_32BITS(&rp
->rm_reply
.rp_reject
.rj_vers
.high
);
387 ND_PRINT((ndo
, "RPC Version mismatch (%u-%u)", rlow
, rhigh
));
390 case SUNRPC_AUTH_ERROR
:
391 ND_TCHECK(rp
->rm_reply
.rp_reject
.rj_why
);
392 rwhy
= EXTRACT_32BITS(&rp
->rm_reply
.rp_reject
.rj_why
);
393 ND_PRINT((ndo
, "Auth %s", tok2str(sunrpc_auth_str
, "Invalid failure code %u", rwhy
)));
397 ND_PRINT((ndo
, "Unknown reason for rejecting rpc message %u", (unsigned int)rstat
));
403 ND_PRINT((ndo
, "reply Unknown rpc response code=%u %u", reply_stat
, length
));
410 ND_PRINT((ndo
, "%s", tstr
));
414 * Return a pointer to the first file handle in the packet.
415 * If the packet was truncated, return 0.
417 static const uint32_t *
418 parsereq(netdissect_options
*ndo
,
419 register const struct sunrpc_msg
*rp
, register u_int length
)
421 register const uint32_t *dp
;
425 * find the start of the req data (if we captured it)
427 dp
= (const uint32_t *)&rp
->rm_call
.cb_cred
;
429 len
= EXTRACT_32BITS(&dp
[1]);
431 dp
+= (len
+ (2 * sizeof(*dp
) + 3)) / sizeof(*dp
);
433 len
= EXTRACT_32BITS(&dp
[1]);
435 dp
+= (len
+ (2 * sizeof(*dp
) + 3)) / sizeof(*dp
);
436 ND_TCHECK2(dp
[0], 0);
445 * Print out an NFS file handle and return a pointer to following word.
446 * If packet was truncated, return 0.
448 static const uint32_t *
449 parsefh(netdissect_options
*ndo
,
450 register const uint32_t *dp
, int v3
)
456 len
= EXTRACT_32BITS(dp
) / 4;
461 if (ND_TTEST2(*dp
, len
* sizeof(*dp
))) {
462 nfs_printfh(ndo
, dp
, len
);
470 * Print out a file name and return pointer to 32-bit word past it.
471 * If packet was truncated, return 0.
473 static const uint32_t *
474 parsefn(netdissect_options
*ndo
,
475 register const uint32_t *dp
)
477 register uint32_t len
;
478 register const u_char
*cp
;
480 /* Bail if we don't have the string length */
483 /* Fetch string length; convert to host order */
487 ND_TCHECK2(*dp
, ((len
+ 3) & ~3));
489 cp
= (const u_char
*)dp
;
490 /* Update 32-bit pointer (NFS filenames padded to 32-bit boundaries) */
491 dp
+= ((len
+ 3) & ~3) / sizeof(*dp
);
492 ND_PRINT((ndo
, "\""));
493 if (fn_printn(ndo
, cp
, len
, ndo
->ndo_snapend
)) {
494 ND_PRINT((ndo
, "\""));
497 ND_PRINT((ndo
, "\""));
505 * Print out file handle and file name.
506 * Return pointer to 32-bit word past file name.
507 * If packet was truncated (or there was some other error), return 0.
509 static const uint32_t *
510 parsefhn(netdissect_options
*ndo
,
511 register const uint32_t *dp
, int v3
)
513 dp
= parsefh(ndo
, dp
, v3
);
516 ND_PRINT((ndo
, " "));
517 return (parsefn(ndo
, dp
));
521 nfsreq_print_noaddr(netdissect_options
*ndo
,
522 register const u_char
*bp
, u_int length
,
523 register const u_char
*bp2
)
525 register const struct sunrpc_msg
*rp
;
526 register const uint32_t *dp
;
530 uint32_t access_flags
;
531 struct nfsv3_sattr sa3
;
533 ND_PRINT((ndo
, "%d", length
));
534 nfserr
= 0; /* assume no error */
535 rp
= (const struct sunrpc_msg
*)bp
;
537 if (!xid_map_enter(ndo
, rp
, bp2
)) /* record proc number for later on */
540 v3
= (EXTRACT_32BITS(&rp
->rm_call
.cb_vers
) == NFS_VER3
);
541 proc
= EXTRACT_32BITS(&rp
->rm_call
.cb_proc
);
543 if (!v3
&& proc
< NFS_NPROCS
)
544 proc
= nfsv3_procid
[proc
];
546 ND_PRINT((ndo
, " %s", tok2str(nfsproc_str
, "proc-%u", proc
)));
549 case NFSPROC_GETATTR
:
550 case NFSPROC_SETATTR
:
551 case NFSPROC_READLINK
:
554 case NFSPROC_PATHCONF
:
555 if ((dp
= parsereq(ndo
, rp
, length
)) != NULL
&&
556 parsefh(ndo
, dp
, v3
) != NULL
)
565 if ((dp
= parsereq(ndo
, rp
, length
)) != NULL
&&
566 parsefhn(ndo
, dp
, v3
) != NULL
)
571 if ((dp
= parsereq(ndo
, rp
, length
)) != NULL
&&
572 (dp
= parsefh(ndo
, dp
, v3
)) != NULL
) {
574 access_flags
= EXTRACT_32BITS(&dp
[0]);
575 if (access_flags
& ~NFSV3ACCESS_FULL
) {
576 /* NFSV3ACCESS definitions aren't up to date */
577 ND_PRINT((ndo
, " %04x", access_flags
));
578 } else if ((access_flags
& NFSV3ACCESS_FULL
) == NFSV3ACCESS_FULL
) {
579 ND_PRINT((ndo
, " NFS_ACCESS_FULL"));
581 char separator
= ' ';
582 if (access_flags
& NFSV3ACCESS_READ
) {
583 ND_PRINT((ndo
, " NFS_ACCESS_READ"));
586 if (access_flags
& NFSV3ACCESS_LOOKUP
) {
587 ND_PRINT((ndo
, "%cNFS_ACCESS_LOOKUP", separator
));
590 if (access_flags
& NFSV3ACCESS_MODIFY
) {
591 ND_PRINT((ndo
, "%cNFS_ACCESS_MODIFY", separator
));
594 if (access_flags
& NFSV3ACCESS_EXTEND
) {
595 ND_PRINT((ndo
, "%cNFS_ACCESS_EXTEND", separator
));
598 if (access_flags
& NFSV3ACCESS_DELETE
) {
599 ND_PRINT((ndo
, "%cNFS_ACCESS_DELETE", separator
));
602 if (access_flags
& NFSV3ACCESS_EXECUTE
)
603 ND_PRINT((ndo
, "%cNFS_ACCESS_EXECUTE", separator
));
610 if ((dp
= parsereq(ndo
, rp
, length
)) != NULL
&&
611 (dp
= parsefh(ndo
, dp
, v3
)) != NULL
) {
614 ND_PRINT((ndo
, " %u bytes @ %" PRIu64
,
615 EXTRACT_32BITS(&dp
[2]),
616 EXTRACT_64BITS(&dp
[0])));
619 ND_PRINT((ndo
, " %u bytes @ %u",
620 EXTRACT_32BITS(&dp
[1]),
621 EXTRACT_32BITS(&dp
[0])));
628 if ((dp
= parsereq(ndo
, rp
, length
)) != NULL
&&
629 (dp
= parsefh(ndo
, dp
, v3
)) != NULL
) {
632 ND_PRINT((ndo
, " %u (%u) bytes @ %" PRIu64
,
633 EXTRACT_32BITS(&dp
[4]),
634 EXTRACT_32BITS(&dp
[2]),
635 EXTRACT_64BITS(&dp
[0])));
636 if (ndo
->ndo_vflag
) {
637 ND_PRINT((ndo
, " <%s>",
638 tok2str(nfsv3_writemodes
,
639 NULL
, EXTRACT_32BITS(&dp
[3]))));
643 ND_PRINT((ndo
, " %u (%u) bytes @ %u (%u)",
644 EXTRACT_32BITS(&dp
[3]),
645 EXTRACT_32BITS(&dp
[2]),
646 EXTRACT_32BITS(&dp
[1]),
647 EXTRACT_32BITS(&dp
[0])));
653 case NFSPROC_SYMLINK
:
654 if ((dp
= parsereq(ndo
, rp
, length
)) != NULL
&&
655 (dp
= parsefhn(ndo
, dp
, v3
)) != NULL
) {
656 ND_PRINT((ndo
, " ->"));
657 if (v3
&& (dp
= parse_sattr3(ndo
, dp
, &sa3
)) == NULL
)
659 if (parsefn(ndo
, dp
) == NULL
)
661 if (v3
&& ndo
->ndo_vflag
)
662 print_sattr3(ndo
, &sa3
, ndo
->ndo_vflag
);
668 if ((dp
= parsereq(ndo
, rp
, length
)) != NULL
&&
669 (dp
= parsefhn(ndo
, dp
, v3
)) != NULL
) {
671 type
= (nfs_type
)EXTRACT_32BITS(dp
);
673 if ((dp
= parse_sattr3(ndo
, dp
, &sa3
)) == NULL
)
675 ND_PRINT((ndo
, " %s", tok2str(type2str
, "unk-ft %d", type
)));
676 if (ndo
->ndo_vflag
&& (type
== NFCHR
|| type
== NFBLK
)) {
678 ND_PRINT((ndo
, " %u/%u",
679 EXTRACT_32BITS(&dp
[0]),
680 EXTRACT_32BITS(&dp
[1])));
684 print_sattr3(ndo
, &sa3
, ndo
->ndo_vflag
);
690 if ((dp
= parsereq(ndo
, rp
, length
)) != NULL
&&
691 (dp
= parsefhn(ndo
, dp
, v3
)) != NULL
) {
692 ND_PRINT((ndo
, " ->"));
693 if (parsefhn(ndo
, dp
, v3
) != NULL
)
699 if ((dp
= parsereq(ndo
, rp
, length
)) != NULL
&&
700 (dp
= parsefh(ndo
, dp
, v3
)) != NULL
) {
701 ND_PRINT((ndo
, " ->"));
702 if (parsefhn(ndo
, dp
, v3
) != NULL
)
707 case NFSPROC_READDIR
:
708 if ((dp
= parsereq(ndo
, rp
, length
)) != NULL
&&
709 (dp
= parsefh(ndo
, dp
, v3
)) != NULL
) {
713 * We shouldn't really try to interpret the
714 * offset cookie here.
716 ND_PRINT((ndo
, " %u bytes @ %" PRId64
,
717 EXTRACT_32BITS(&dp
[4]),
718 EXTRACT_64BITS(&dp
[0])));
720 ND_PRINT((ndo
, " verf %08x%08x", dp
[2], dp
[3]));
724 * Print the offset as signed, since -1 is
725 * common, but offsets > 2^31 aren't.
727 ND_PRINT((ndo
, " %u bytes @ %d",
728 EXTRACT_32BITS(&dp
[1]),
729 EXTRACT_32BITS(&dp
[0])));
735 case NFSPROC_READDIRPLUS
:
736 if ((dp
= parsereq(ndo
, rp
, length
)) != NULL
&&
737 (dp
= parsefh(ndo
, dp
, v3
)) != NULL
) {
740 * We don't try to interpret the offset
743 ND_PRINT((ndo
, " %u bytes @ %" PRId64
,
744 EXTRACT_32BITS(&dp
[4]),
745 EXTRACT_64BITS(&dp
[0])));
746 if (ndo
->ndo_vflag
) {
748 ND_PRINT((ndo
, " max %u verf %08x%08x",
749 EXTRACT_32BITS(&dp
[5]), dp
[2], dp
[3]));
756 if ((dp
= parsereq(ndo
, rp
, length
)) != NULL
&&
757 (dp
= parsefh(ndo
, dp
, v3
)) != NULL
) {
759 ND_PRINT((ndo
, " %u bytes @ %" PRIu64
,
760 EXTRACT_32BITS(&dp
[2]),
761 EXTRACT_64BITS(&dp
[0])));
772 ND_PRINT((ndo
, "%s", tstr
));
776 * Print out an NFS file handle.
777 * We assume packet was not truncated before the end of the
778 * file handle pointed to by dp.
780 * Note: new version (using portable file-handle parser) doesn't produce
781 * generation number. It probably could be made to do that, with some
782 * additional hacking on the parser code.
785 nfs_printfh(netdissect_options
*ndo
,
786 register const uint32_t *dp
, const u_int len
)
790 const char *sfsname
= NULL
;
793 if (ndo
->ndo_uflag
) {
795 char const *sep
= "";
797 ND_PRINT((ndo
, " fh["));
798 for (i
=0; i
<len
; i
++) {
799 ND_PRINT((ndo
, "%s%x", sep
, dp
[i
]));
802 ND_PRINT((ndo
, "]"));
806 Parse_fh((const u_char
*)dp
, len
, &fsid
, &ino
, NULL
, &sfsname
, 0);
809 /* file system ID is ASCII, not numeric, for this server OS */
810 static char temp
[NFSX_V3FHMAX
+1];
812 /* Make sure string is null-terminated */
813 strncpy(temp
, sfsname
, NFSX_V3FHMAX
);
814 temp
[sizeof(temp
) - 1] = '\0';
815 /* Remove trailing spaces */
816 spacep
= strchr(temp
, ' ');
820 ND_PRINT((ndo
, " fh %s/", temp
));
822 ND_PRINT((ndo
, " fh %d,%d/",
823 fsid
.Fsid_dev
.Major
, fsid
.Fsid_dev
.Minor
));
826 if(fsid
.Fsid_dev
.Minor
== 257)
827 /* Print the undecoded handle */
828 ND_PRINT((ndo
, "%s", fsid
.Opaque_Handle
));
830 ND_PRINT((ndo
, "%ld", (long) ino
));
834 * Maintain a small cache of recent client.XID.server/proc pairs, to allow
835 * us to match up replies with requests and thus to know how to parse
839 struct xid_map_entry
{
840 uint32_t xid
; /* transaction ID (net order) */
841 int ipver
; /* IP version (4 or 6) */
842 struct in6_addr client
; /* client IP address (net order) */
843 struct in6_addr server
; /* server IP address (net order) */
844 uint32_t proc
; /* call proc number (host order) */
845 uint32_t vers
; /* program version (host order) */
849 * Map entries are kept in an array that we manage as a ring;
850 * new entries are always added at the tail of the ring. Initially,
851 * all the entries are zero and hence don't match anything.
854 #define XIDMAPSIZE 64
856 static struct xid_map_entry xid_map
[XIDMAPSIZE
];
858 static int xid_map_next
= 0;
859 static int xid_map_hint
= 0;
862 xid_map_enter(netdissect_options
*ndo
,
863 const struct sunrpc_msg
*rp
, const u_char
*bp
)
865 const struct ip
*ip
= NULL
;
866 const struct ip6_hdr
*ip6
= NULL
;
867 struct xid_map_entry
*xmep
;
869 if (!ND_TTEST(rp
->rm_call
.cb_vers
))
871 switch (IP_V((const struct ip
*)bp
)) {
873 ip
= (const struct ip
*)bp
;
876 ip6
= (const struct ip6_hdr
*)bp
;
882 xmep
= &xid_map
[xid_map_next
];
884 if (++xid_map_next
>= XIDMAPSIZE
)
887 UNALIGNED_MEMCPY(&xmep
->xid
, &rp
->rm_xid
, sizeof(xmep
->xid
));
890 UNALIGNED_MEMCPY(&xmep
->client
, &ip
->ip_src
, sizeof(ip
->ip_src
));
891 UNALIGNED_MEMCPY(&xmep
->server
, &ip
->ip_dst
, sizeof(ip
->ip_dst
));
895 UNALIGNED_MEMCPY(&xmep
->client
, &ip6
->ip6_src
, sizeof(ip6
->ip6_src
));
896 UNALIGNED_MEMCPY(&xmep
->server
, &ip6
->ip6_dst
, sizeof(ip6
->ip6_dst
));
898 xmep
->proc
= EXTRACT_32BITS(&rp
->rm_call
.cb_proc
);
899 xmep
->vers
= EXTRACT_32BITS(&rp
->rm_call
.cb_vers
);
904 * Returns 0 and puts NFSPROC_xxx in proc return and
905 * version in vers return, or returns -1 on failure
908 xid_map_find(const struct sunrpc_msg
*rp
, const u_char
*bp
, uint32_t *proc
,
912 struct xid_map_entry
*xmep
;
914 const struct ip
*ip
= (const struct ip
*)bp
;
915 const struct ip6_hdr
*ip6
= (const struct ip6_hdr
*)bp
;
918 UNALIGNED_MEMCPY(&xid
, &rp
->rm_xid
, sizeof(xmep
->xid
));
919 /* Start searching from where we last left off */
924 if (xmep
->ipver
!= IP_V(ip
) || xmep
->xid
!= xid
)
926 switch (xmep
->ipver
) {
928 if (UNALIGNED_MEMCMP(&ip
->ip_src
, &xmep
->server
,
929 sizeof(ip
->ip_src
)) != 0 ||
930 UNALIGNED_MEMCMP(&ip
->ip_dst
, &xmep
->client
,
931 sizeof(ip
->ip_dst
)) != 0) {
936 if (UNALIGNED_MEMCMP(&ip6
->ip6_src
, &xmep
->server
,
937 sizeof(ip6
->ip6_src
)) != 0 ||
938 UNALIGNED_MEMCMP(&ip6
->ip6_dst
, &xmep
->client
,
939 sizeof(ip6
->ip6_dst
)) != 0) {
955 if (++i
>= XIDMAPSIZE
)
957 } while (i
!= xid_map_hint
);
964 * Routines for parsing reply packets
968 * Return a pointer to the beginning of the actual results.
969 * If the packet was truncated, return 0.
971 static const uint32_t *
972 parserep(netdissect_options
*ndo
,
973 register const struct sunrpc_msg
*rp
, register u_int length
)
975 register const uint32_t *dp
;
977 enum sunrpc_accept_stat astat
;
981 * Here we find the address of the ar_verf credentials.
982 * Originally, this calculation was
983 * dp = (uint32_t *)&rp->rm_reply.rp_acpt.ar_verf
984 * On the wire, the rp_acpt field starts immediately after
985 * the (32 bit) rp_stat field. However, rp_acpt (which is a
986 * "struct accepted_reply") contains a "struct opaque_auth",
987 * whose internal representation contains a pointer, so on a
988 * 64-bit machine the compiler inserts 32 bits of padding
989 * before rp->rm_reply.rp_acpt.ar_verf. So, we cannot use
990 * the internal representation to parse the on-the-wire
991 * representation. Instead, we skip past the rp_stat field,
992 * which is an "enum" and so occupies one 32-bit word.
994 dp
= ((const uint32_t *)&rp
->rm_reply
) + 1;
996 len
= EXTRACT_32BITS(&dp
[1]);
1000 * skip past the ar_verf credentials.
1002 dp
+= (len
+ (2*sizeof(uint32_t) + 3)) / sizeof(uint32_t);
1005 * now we can check the ar_stat field
1008 astat
= (enum sunrpc_accept_stat
) EXTRACT_32BITS(dp
);
1009 if (astat
!= SUNRPC_SUCCESS
) {
1010 ND_PRINT((ndo
, " %s", tok2str(sunrpc_str
, "ar_stat %d", astat
)));
1011 nfserr
= 1; /* suppress trunc string */
1014 /* successful return */
1015 ND_TCHECK2(*dp
, sizeof(astat
));
1016 return ((const uint32_t *) (sizeof(astat
) + ((const char *)dp
)));
1021 static const uint32_t *
1022 parsestatus(netdissect_options
*ndo
,
1023 const uint32_t *dp
, int *er
)
1029 errnum
= EXTRACT_32BITS(&dp
[0]);
1033 if (!ndo
->ndo_qflag
)
1034 ND_PRINT((ndo
, " ERROR: %s",
1035 tok2str(status2str
, "unk %d", errnum
)));
1043 static const uint32_t *
1044 parsefattr(netdissect_options
*ndo
,
1045 const uint32_t *dp
, int verbose
, int v3
)
1047 const struct nfs_fattr
*fap
;
1049 fap
= (const struct nfs_fattr
*)dp
;
1050 ND_TCHECK(fap
->fa_gid
);
1052 ND_PRINT((ndo
, " %s %o ids %d/%d",
1053 tok2str(type2str
, "unk-ft %d ",
1054 EXTRACT_32BITS(&fap
->fa_type
)),
1055 EXTRACT_32BITS(&fap
->fa_mode
),
1056 EXTRACT_32BITS(&fap
->fa_uid
),
1057 EXTRACT_32BITS(&fap
->fa_gid
)));
1059 ND_TCHECK(fap
->fa3_size
);
1060 ND_PRINT((ndo
, " sz %" PRIu64
,
1061 EXTRACT_64BITS((const uint32_t *)&fap
->fa3_size
)));
1063 ND_TCHECK(fap
->fa2_size
);
1064 ND_PRINT((ndo
, " sz %d", EXTRACT_32BITS(&fap
->fa2_size
)));
1067 /* print lots more stuff */
1070 ND_TCHECK(fap
->fa3_ctime
);
1071 ND_PRINT((ndo
, " nlink %d rdev %d/%d",
1072 EXTRACT_32BITS(&fap
->fa_nlink
),
1073 EXTRACT_32BITS(&fap
->fa3_rdev
.specdata1
),
1074 EXTRACT_32BITS(&fap
->fa3_rdev
.specdata2
)));
1075 ND_PRINT((ndo
, " fsid %" PRIx64
,
1076 EXTRACT_64BITS((const uint32_t *)&fap
->fa3_fsid
)));
1077 ND_PRINT((ndo
, " fileid %" PRIx64
,
1078 EXTRACT_64BITS((const uint32_t *)&fap
->fa3_fileid
)));
1079 ND_PRINT((ndo
, " a/m/ctime %u.%06u",
1080 EXTRACT_32BITS(&fap
->fa3_atime
.nfsv3_sec
),
1081 EXTRACT_32BITS(&fap
->fa3_atime
.nfsv3_nsec
)));
1082 ND_PRINT((ndo
, " %u.%06u",
1083 EXTRACT_32BITS(&fap
->fa3_mtime
.nfsv3_sec
),
1084 EXTRACT_32BITS(&fap
->fa3_mtime
.nfsv3_nsec
)));
1085 ND_PRINT((ndo
, " %u.%06u",
1086 EXTRACT_32BITS(&fap
->fa3_ctime
.nfsv3_sec
),
1087 EXTRACT_32BITS(&fap
->fa3_ctime
.nfsv3_nsec
)));
1089 ND_TCHECK(fap
->fa2_ctime
);
1090 ND_PRINT((ndo
, " nlink %d rdev 0x%x fsid 0x%x nodeid 0x%x a/m/ctime",
1091 EXTRACT_32BITS(&fap
->fa_nlink
),
1092 EXTRACT_32BITS(&fap
->fa2_rdev
),
1093 EXTRACT_32BITS(&fap
->fa2_fsid
),
1094 EXTRACT_32BITS(&fap
->fa2_fileid
)));
1095 ND_PRINT((ndo
, " %u.%06u",
1096 EXTRACT_32BITS(&fap
->fa2_atime
.nfsv2_sec
),
1097 EXTRACT_32BITS(&fap
->fa2_atime
.nfsv2_usec
)));
1098 ND_PRINT((ndo
, " %u.%06u",
1099 EXTRACT_32BITS(&fap
->fa2_mtime
.nfsv2_sec
),
1100 EXTRACT_32BITS(&fap
->fa2_mtime
.nfsv2_usec
)));
1101 ND_PRINT((ndo
, " %u.%06u",
1102 EXTRACT_32BITS(&fap
->fa2_ctime
.nfsv2_sec
),
1103 EXTRACT_32BITS(&fap
->fa2_ctime
.nfsv2_usec
)));
1106 return ((const uint32_t *)((const unsigned char *)dp
+
1107 (v3
? NFSX_V3FATTR
: NFSX_V2FATTR
)));
1113 parseattrstat(netdissect_options
*ndo
,
1114 const uint32_t *dp
, int verbose
, int v3
)
1118 dp
= parsestatus(ndo
, dp
, &er
);
1124 return (parsefattr(ndo
, dp
, verbose
, v3
) != NULL
);
1128 parsediropres(netdissect_options
*ndo
,
1133 if (!(dp
= parsestatus(ndo
, dp
, &er
)))
1138 dp
= parsefh(ndo
, dp
, 0);
1142 return (parsefattr(ndo
, dp
, ndo
->ndo_vflag
, 0) != NULL
);
1146 parselinkres(netdissect_options
*ndo
,
1147 const uint32_t *dp
, int v3
)
1151 dp
= parsestatus(ndo
, dp
, &er
);
1156 if (v3
&& !(dp
= parse_post_op_attr(ndo
, dp
, ndo
->ndo_vflag
)))
1158 ND_PRINT((ndo
, " "));
1159 return (parsefn(ndo
, dp
) != NULL
);
1163 parsestatfs(netdissect_options
*ndo
,
1164 const uint32_t *dp
, int v3
)
1166 const struct nfs_statfs
*sfsp
;
1169 dp
= parsestatus(ndo
, dp
, &er
);
1180 ND_PRINT((ndo
, " POST:"));
1181 if (!(dp
= parse_post_op_attr(ndo
, dp
, ndo
->ndo_vflag
)))
1185 ND_TCHECK2(*dp
, (v3
? NFSX_V3STATFS
: NFSX_V2STATFS
));
1187 sfsp
= (const struct nfs_statfs
*)dp
;
1190 ND_PRINT((ndo
, " tbytes %" PRIu64
" fbytes %" PRIu64
" abytes %" PRIu64
,
1191 EXTRACT_64BITS((const uint32_t *)&sfsp
->sf_tbytes
),
1192 EXTRACT_64BITS((const uint32_t *)&sfsp
->sf_fbytes
),
1193 EXTRACT_64BITS((const uint32_t *)&sfsp
->sf_abytes
)));
1194 if (ndo
->ndo_vflag
) {
1195 ND_PRINT((ndo
, " tfiles %" PRIu64
" ffiles %" PRIu64
" afiles %" PRIu64
" invar %u",
1196 EXTRACT_64BITS((const uint32_t *)&sfsp
->sf_tfiles
),
1197 EXTRACT_64BITS((const uint32_t *)&sfsp
->sf_ffiles
),
1198 EXTRACT_64BITS((const uint32_t *)&sfsp
->sf_afiles
),
1199 EXTRACT_32BITS(&sfsp
->sf_invarsec
)));
1202 ND_PRINT((ndo
, " tsize %d bsize %d blocks %d bfree %d bavail %d",
1203 EXTRACT_32BITS(&sfsp
->sf_tsize
),
1204 EXTRACT_32BITS(&sfsp
->sf_bsize
),
1205 EXTRACT_32BITS(&sfsp
->sf_blocks
),
1206 EXTRACT_32BITS(&sfsp
->sf_bfree
),
1207 EXTRACT_32BITS(&sfsp
->sf_bavail
)));
1216 parserddires(netdissect_options
*ndo
,
1221 dp
= parsestatus(ndo
, dp
, &er
);
1230 ND_PRINT((ndo
, " offset 0x%x size %d ",
1231 EXTRACT_32BITS(&dp
[0]), EXTRACT_32BITS(&dp
[1])));
1233 ND_PRINT((ndo
, " eof"));
1240 static const uint32_t *
1241 parse_wcc_attr(netdissect_options
*ndo
,
1244 /* Our caller has already checked this */
1245 ND_PRINT((ndo
, " sz %" PRIu64
, EXTRACT_64BITS(&dp
[0])));
1246 ND_PRINT((ndo
, " mtime %u.%06u ctime %u.%06u",
1247 EXTRACT_32BITS(&dp
[2]), EXTRACT_32BITS(&dp
[3]),
1248 EXTRACT_32BITS(&dp
[4]), EXTRACT_32BITS(&dp
[5])));
1253 * Pre operation attributes. Print only if vflag > 1.
1255 static const uint32_t *
1256 parse_pre_op_attr(netdissect_options
*ndo
,
1257 const uint32_t *dp
, int verbose
)
1260 if (!EXTRACT_32BITS(&dp
[0]))
1263 ND_TCHECK2(*dp
, 24);
1265 return parse_wcc_attr(ndo
, dp
);
1267 /* If not verbose enough, just skip over wcc_attr */
1275 * Post operation attributes are printed if vflag >= 1
1277 static const uint32_t *
1278 parse_post_op_attr(netdissect_options
*ndo
,
1279 const uint32_t *dp
, int verbose
)
1282 if (!EXTRACT_32BITS(&dp
[0]))
1286 return parsefattr(ndo
, dp
, verbose
, 1);
1288 return (dp
+ (NFSX_V3FATTR
/ sizeof (uint32_t)));
1293 static const uint32_t *
1294 parse_wcc_data(netdissect_options
*ndo
,
1295 const uint32_t *dp
, int verbose
)
1298 ND_PRINT((ndo
, " PRE:"));
1299 if (!(dp
= parse_pre_op_attr(ndo
, dp
, verbose
)))
1303 ND_PRINT((ndo
, " POST:"));
1304 return parse_post_op_attr(ndo
, dp
, verbose
);
1307 static const uint32_t *
1308 parsecreateopres(netdissect_options
*ndo
,
1309 const uint32_t *dp
, int verbose
)
1313 if (!(dp
= parsestatus(ndo
, dp
, &er
)))
1316 dp
= parse_wcc_data(ndo
, dp
, verbose
);
1319 if (!EXTRACT_32BITS(&dp
[0]))
1322 if (!(dp
= parsefh(ndo
, dp
, 1)))
1325 if (!(dp
= parse_post_op_attr(ndo
, dp
, verbose
)))
1327 if (ndo
->ndo_vflag
> 1) {
1328 ND_PRINT((ndo
, " dir attr:"));
1329 dp
= parse_wcc_data(ndo
, dp
, verbose
);
1339 parsewccres(netdissect_options
*ndo
,
1340 const uint32_t *dp
, int verbose
)
1344 if (!(dp
= parsestatus(ndo
, dp
, &er
)))
1346 return parse_wcc_data(ndo
, dp
, verbose
) != NULL
;
1349 static const uint32_t *
1350 parsev3rddirres(netdissect_options
*ndo
,
1351 const uint32_t *dp
, int verbose
)
1355 if (!(dp
= parsestatus(ndo
, dp
, &er
)))
1358 ND_PRINT((ndo
, " POST:"));
1359 if (!(dp
= parse_post_op_attr(ndo
, dp
, verbose
)))
1363 if (ndo
->ndo_vflag
) {
1365 ND_PRINT((ndo
, " verf %08x%08x", dp
[0], dp
[1]));
1374 parsefsinfo(netdissect_options
*ndo
,
1377 const struct nfsv3_fsinfo
*sfp
;
1380 if (!(dp
= parsestatus(ndo
, dp
, &er
)))
1383 ND_PRINT((ndo
, " POST:"));
1384 if (!(dp
= parse_post_op_attr(ndo
, dp
, ndo
->ndo_vflag
)))
1389 sfp
= (const struct nfsv3_fsinfo
*)dp
;
1391 ND_PRINT((ndo
, " rtmax %u rtpref %u wtmax %u wtpref %u dtpref %u",
1392 EXTRACT_32BITS(&sfp
->fs_rtmax
),
1393 EXTRACT_32BITS(&sfp
->fs_rtpref
),
1394 EXTRACT_32BITS(&sfp
->fs_wtmax
),
1395 EXTRACT_32BITS(&sfp
->fs_wtpref
),
1396 EXTRACT_32BITS(&sfp
->fs_dtpref
)));
1397 if (ndo
->ndo_vflag
) {
1398 ND_PRINT((ndo
, " rtmult %u wtmult %u maxfsz %" PRIu64
,
1399 EXTRACT_32BITS(&sfp
->fs_rtmult
),
1400 EXTRACT_32BITS(&sfp
->fs_wtmult
),
1401 EXTRACT_64BITS((const uint32_t *)&sfp
->fs_maxfilesize
)));
1402 ND_PRINT((ndo
, " delta %u.%06u ",
1403 EXTRACT_32BITS(&sfp
->fs_timedelta
.nfsv3_sec
),
1404 EXTRACT_32BITS(&sfp
->fs_timedelta
.nfsv3_nsec
)));
1412 parsepathconf(netdissect_options
*ndo
,
1416 const struct nfsv3_pathconf
*spp
;
1418 if (!(dp
= parsestatus(ndo
, dp
, &er
)))
1421 ND_PRINT((ndo
, " POST:"));
1422 if (!(dp
= parse_post_op_attr(ndo
, dp
, ndo
->ndo_vflag
)))
1427 spp
= (const struct nfsv3_pathconf
*)dp
;
1430 ND_PRINT((ndo
, " linkmax %u namemax %u %s %s %s %s",
1431 EXTRACT_32BITS(&spp
->pc_linkmax
),
1432 EXTRACT_32BITS(&spp
->pc_namemax
),
1433 EXTRACT_32BITS(&spp
->pc_notrunc
) ? "notrunc" : "",
1434 EXTRACT_32BITS(&spp
->pc_chownrestricted
) ? "chownres" : "",
1435 EXTRACT_32BITS(&spp
->pc_caseinsensitive
) ? "igncase" : "",
1436 EXTRACT_32BITS(&spp
->pc_casepreserving
) ? "keepcase" : ""));
1443 interp_reply(netdissect_options
*ndo
,
1444 const struct sunrpc_msg
*rp
, uint32_t proc
, uint32_t vers
, int length
)
1446 register const uint32_t *dp
;
1450 v3
= (vers
== NFS_VER3
);
1452 if (!v3
&& proc
< NFS_NPROCS
)
1453 proc
= nfsv3_procid
[proc
];
1455 ND_PRINT((ndo
, " %s", tok2str(nfsproc_str
, "proc-%u", proc
)));
1458 case NFSPROC_GETATTR
:
1459 dp
= parserep(ndo
, rp
, length
);
1460 if (dp
!= NULL
&& parseattrstat(ndo
, dp
, !ndo
->ndo_qflag
, v3
) != 0)
1464 case NFSPROC_SETATTR
:
1465 if (!(dp
= parserep(ndo
, rp
, length
)))
1468 if (parsewccres(ndo
, dp
, ndo
->ndo_vflag
))
1471 if (parseattrstat(ndo
, dp
, !ndo
->ndo_qflag
, 0) != 0)
1476 case NFSPROC_LOOKUP
:
1477 if (!(dp
= parserep(ndo
, rp
, length
)))
1480 if (!(dp
= parsestatus(ndo
, dp
, &er
)))
1483 if (ndo
->ndo_vflag
> 1) {
1484 ND_PRINT((ndo
, " post dattr:"));
1485 dp
= parse_post_op_attr(ndo
, dp
, ndo
->ndo_vflag
);
1488 if (!(dp
= parsefh(ndo
, dp
, v3
)))
1490 if ((dp
= parse_post_op_attr(ndo
, dp
, ndo
->ndo_vflag
)) &&
1491 ndo
->ndo_vflag
> 1) {
1492 ND_PRINT((ndo
, " post dattr:"));
1493 dp
= parse_post_op_attr(ndo
, dp
, ndo
->ndo_vflag
);
1499 if (parsediropres(ndo
, dp
) != 0)
1504 case NFSPROC_ACCESS
:
1505 if (!(dp
= parserep(ndo
, rp
, length
)))
1507 if (!(dp
= parsestatus(ndo
, dp
, &er
)))
1510 ND_PRINT((ndo
, " attr:"));
1511 if (!(dp
= parse_post_op_attr(ndo
, dp
, ndo
->ndo_vflag
)))
1515 ND_PRINT((ndo
, " c %04x", EXTRACT_32BITS(&dp
[0])));
1519 case NFSPROC_READLINK
:
1520 dp
= parserep(ndo
, rp
, length
);
1521 if (dp
!= NULL
&& parselinkres(ndo
, dp
, v3
) != 0)
1526 if (!(dp
= parserep(ndo
, rp
, length
)))
1529 if (!(dp
= parsestatus(ndo
, dp
, &er
)))
1531 if (!(dp
= parse_post_op_attr(ndo
, dp
, ndo
->ndo_vflag
)))
1535 if (ndo
->ndo_vflag
) {
1537 ND_PRINT((ndo
, " %u bytes", EXTRACT_32BITS(&dp
[0])));
1538 if (EXTRACT_32BITS(&dp
[1]))
1539 ND_PRINT((ndo
, " EOF"));
1543 if (parseattrstat(ndo
, dp
, ndo
->ndo_vflag
, 0) != 0)
1549 if (!(dp
= parserep(ndo
, rp
, length
)))
1552 if (!(dp
= parsestatus(ndo
, dp
, &er
)))
1554 if (!(dp
= parse_wcc_data(ndo
, dp
, ndo
->ndo_vflag
)))
1558 if (ndo
->ndo_vflag
) {
1560 ND_PRINT((ndo
, " %u bytes", EXTRACT_32BITS(&dp
[0])));
1561 if (ndo
->ndo_vflag
> 1) {
1563 ND_PRINT((ndo
, " <%s>",
1564 tok2str(nfsv3_writemodes
,
1565 NULL
, EXTRACT_32BITS(&dp
[1]))));
1570 if (parseattrstat(ndo
, dp
, ndo
->ndo_vflag
, v3
) != 0)
1575 case NFSPROC_CREATE
:
1577 if (!(dp
= parserep(ndo
, rp
, length
)))
1580 if (parsecreateopres(ndo
, dp
, ndo
->ndo_vflag
) != NULL
)
1583 if (parsediropres(ndo
, dp
) != 0)
1588 case NFSPROC_SYMLINK
:
1589 if (!(dp
= parserep(ndo
, rp
, length
)))
1592 if (parsecreateopres(ndo
, dp
, ndo
->ndo_vflag
) != NULL
)
1595 if (parsestatus(ndo
, dp
, &er
) != NULL
)
1601 if (!(dp
= parserep(ndo
, rp
, length
)))
1603 if (parsecreateopres(ndo
, dp
, ndo
->ndo_vflag
) != NULL
)
1607 case NFSPROC_REMOVE
:
1609 if (!(dp
= parserep(ndo
, rp
, length
)))
1612 if (parsewccres(ndo
, dp
, ndo
->ndo_vflag
))
1615 if (parsestatus(ndo
, dp
, &er
) != NULL
)
1620 case NFSPROC_RENAME
:
1621 if (!(dp
= parserep(ndo
, rp
, length
)))
1624 if (!(dp
= parsestatus(ndo
, dp
, &er
)))
1626 if (ndo
->ndo_vflag
) {
1627 ND_PRINT((ndo
, " from:"));
1628 if (!(dp
= parse_wcc_data(ndo
, dp
, ndo
->ndo_vflag
)))
1630 ND_PRINT((ndo
, " to:"));
1631 if (!(dp
= parse_wcc_data(ndo
, dp
, ndo
->ndo_vflag
)))
1636 if (parsestatus(ndo
, dp
, &er
) != NULL
)
1642 if (!(dp
= parserep(ndo
, rp
, length
)))
1645 if (!(dp
= parsestatus(ndo
, dp
, &er
)))
1647 if (ndo
->ndo_vflag
) {
1648 ND_PRINT((ndo
, " file POST:"));
1649 if (!(dp
= parse_post_op_attr(ndo
, dp
, ndo
->ndo_vflag
)))
1651 ND_PRINT((ndo
, " dir:"));
1652 if (!(dp
= parse_wcc_data(ndo
, dp
, ndo
->ndo_vflag
)))
1657 if (parsestatus(ndo
, dp
, &er
) != NULL
)
1662 case NFSPROC_READDIR
:
1663 if (!(dp
= parserep(ndo
, rp
, length
)))
1666 if (parsev3rddirres(ndo
, dp
, ndo
->ndo_vflag
))
1669 if (parserddires(ndo
, dp
) != 0)
1674 case NFSPROC_READDIRPLUS
:
1675 if (!(dp
= parserep(ndo
, rp
, length
)))
1677 if (parsev3rddirres(ndo
, dp
, ndo
->ndo_vflag
))
1681 case NFSPROC_FSSTAT
:
1682 dp
= parserep(ndo
, rp
, length
);
1683 if (dp
!= NULL
&& parsestatfs(ndo
, dp
, v3
) != 0)
1687 case NFSPROC_FSINFO
:
1688 dp
= parserep(ndo
, rp
, length
);
1689 if (dp
!= NULL
&& parsefsinfo(ndo
, dp
) != 0)
1693 case NFSPROC_PATHCONF
:
1694 dp
= parserep(ndo
, rp
, length
);
1695 if (dp
!= NULL
&& parsepathconf(ndo
, dp
) != 0)
1699 case NFSPROC_COMMIT
:
1700 dp
= parserep(ndo
, rp
, length
);
1701 if (dp
!= NULL
&& parsewccres(ndo
, dp
, ndo
->ndo_vflag
) != 0)
1710 ND_PRINT((ndo
, "%s", tstr
));